1. Zhang H, Zhang H, Guan T et al (2021) Prototyping and production of polymeric microfluidic chip. Adv Microfluid Nanofluid. https://doi.org/10.5772/intechopen.96355 2. Abdulhameed A, Halim MM, Halin IA (2023) Simulation and experimental validation of the interplay between dielectrophoretic and electroosmotic behavior of conductive and insulator particles for nanofabrication and lab-on-chip applications. Colloid Surface A 663:131065. https://doi.org/10.1016/j.colsurfa.2023.131065 3. Davis R, Singh A, Jackson MJ et al (2022) A comprehensive review on metallic implant biomaterials and their subtractive manufacturing. Int J Adv Manuf Tech 120(3/4):1473–1530 4. Wang X, Li C, Zhang Y et al (2022) Influence of texture shape and arrangement on nanofluid minimum quantity lubrication turning. Int J Adv Manuf Tech 119(1/2):631–646 5. Wang Y, Weng C, Deng Z et al (2023) Fabrication and performance of nickel-based composite mold inserts for micro-injection molding. Appl Surf Sci 615:156417. https://doi.org/10.1016/j.apsusc.2023.156417 6. Li J, Ma H, Liu W et al (2023) Effects of cavity thickness and mold surface roughness on the polymer flow during micro injection molding. Polymers 15(2):326. https://doi.org/10.3390/polym15020326 7. Moazzez B, O’Brien SM, Merschrod SEF (2013) Improved adhesion of gold thin films evaporated on polymer resin: applications for sensing surfaces and MEMS. Sensors 13(6):7021–7032 8. Chen J, Yang J, Zhou M et al (2021) Self-assembled monolayers of alkanethiols on nickel insert: characterization of friction and analysis on demolding quality in microinjection molding. Micromachines 12(6):636. https://doi.org/10.3390/mi12060636 9. Peixoto C, Valentim PT, Sousa PC et al (2022) Injection molding of high-precision optical lenses: a review. Precis Eng 76:29–51 10. Zhang N, Zhang H, Stallard C et al (2018) Replication integrity of micro features using variotherm and vacuum assisted microinjection moulding. CIRP J Manuf Sci Tec 23:20–38 11. Liarte E, Zambrano V, Gracia LA et al (2022) Demoulding process assessment of elastomers in micro-textured moulds. Open Res Europe 1:120. https://doi.org/10.12688/openreseurope.13716.2 12. Zariatin DL, Kiswanto G, Ko T (2017) Investigation of the micromilling process of thin-wall features of aluminum alloy 1100. Int J Adv Manuf Tech 93:2625–2637 13. Raza S, Nadda R, Nirala C (2023) Real-time data acquisition and discharge pulse analysis in controlled RC circuit based microEDM. microsyst Technol 29(3):359–376 14. Arruebo M, Fernández-Pacheco R, Ibarra MR et al (2007) Magnetic nanoparticles for drug delivery. Nano Today 2(3):22–32 15. Schoenherr M, Ruehl H, Guenther T et al (2023) Adhesioninduced demolding forces of hard coated microstructures measured with a novel injection molding tool. Polymers 15(5):1285. https://doi.org/10.3390/polym15051285 16. Jong WR, Li TC, Chen YW et al (2017) Automatic recognition and construction of draft angle for injection mold design. Journal of Software Engineering and Applications (JSEA) 10(1):78–93 17. Łosiewicz B (2015) Electrodeposition mechanism of composite coatings. Solid State Phenom 228:65–78 18. Obilor AF, Pacella M, Wilson A et al (2022) Micro-texturing of polymer surfaces using lasers: a review. Int J Adv Manuf Tech 120(1/2):103–135 19. Lee H, Yi A, Choi J et al (2022) Texturing of polydimethylsiloxane surface for anti-reflective films with super-hydrophobicity in solar cell application. Appl Surf Sci 584:152625. https://doi.org/10.1016/j.apsusc.2022.152625 20. Ji JW, Khan MA, Zhan ZJ et al (2022) Electrochemical polishing of tungsten: an investigation of critical spatial frequency and ultimate roughness. J Electrochem Soc 169(4):043509. https://doi.org/10.1149/1945-7111/ac63fa 21. Li M, Chen Y, Luo W et al (2021) Demolding force dependence on mold surface modifications in UV nanoimprint lithography. Microelectron Eng 236:111470. https://doi.org/10.1016/j.mee.2020.111470 22. Kim SH, Asay DB, Dugger MT (2007) Nanotribology and MEMS. Nano Today 2(5):22–29 23. Chang WT, Hwang IS, Chang MT et al (2012) Method of electrochemical etching of tungsten tips with controllable profiles. Rev Sci Instrum 83:083704. https://doi.org/10.1063/1.4745394 24. Chen X, Yuan Q (2023) Capillary adhesion around the shapes optimized by dissolution. Adv Mater Interfaces 10(13):2202380. https://doi.org/10.1002/admi.202202380 25. Zaki S, Zhang N, Gilchrist MD (2022) Electropolishing and shaping of micro-scale metallic features. Micromachines 13(3):468. https://doi.org/10.3390/mi13030468 26. Li D, Zhang Y, Liu Y et al (2022) Injection moulding of mechanical micro-manufactured structures for optically encoding plastic surfaces. Opt Mater 123:111822. https://doi.org/10.1016/j.optmat.2021.111822 27. Zhang H, Zhang N, Fang F (2021) Investigation of mass transfer inside micro structures and its effect on replication accuracy in precision micro electroforming. Int J Mach Tool Manuf 165:103717. https://doi.org/10.1016/j.ijmachtools.2021.103717 28. Saitta L, Arcadio F, Celano G et al (2023) Design and manufacturing of a surface plasmon resonance sensor based on inkjet 3D printing for simultaneous measurements of refractive index and temperature. Int J Adv Manuf Tech 124(7/8):2261–2278 29. Zhang N, Liu J, Zhang H et al (2019) 3D printing of metallic microstructured mould using selective laser melting for injection moulding of plastic microfluidic devices. Micromachines 10(9):595. https://doi.org/10.3390/mi10090595 30. Martinho PG, Pouzada AS (2021) Alternative materials in moulding elements of hybrid moulds: structural integrity and tribological aspects. Int J Adv Manuf Tech 113(1):351–363 31. Shao L, Pan B, Hou R et al (2022) User-friendly microfluidic manufacturing of hydrogel microspheres with sharp needle. Biofabrication 14(2):025017. https://doi.org/10.1088/1758-5090/ac57a5 32. Bolat G, De la Paz E, Azeredo NF et al (2022) Wearable soft electrochemical microfluidic device integrated with iontophoresis for sweat biosensing. Anal Bioanal Chem 414(18):5411–5421 33. Li L, Li H, Kou G et al (2022) Dynamic camouflage characteristics of a thermal infrared film inspired by honeycomb structure. J Bionic Eng 19(2):458–470 34. Guan B, Pai JH, Cherrill M et al (2022) Injection moulding of micropillar arrays: a comparison of poly (methyl methacrylate) and cyclic olefin copolymer. Microsyst Technol 28:2083–2091 35. Chu Q, Wu A, Tan T et al (2021) Electropolishing behavior of niobium in choline chloride-based deep eutectic solvents. Appl Surf Sci 550:149322. https://doi.org/10.1016/j.apsusc.2021.149322 36. Kityk A, Protsenko V, Danilov F et al (2021) Enhancement of the surface characteristics of Ti-based biomedical alloy by electropolishing in environmentally friendly deep eutectic solvent (Ethaline). Colloid Surface A 613:126125. https://doi.org/10.1016/j.colsurfa.2020.126125 37. Jeong J, Yoon W, Chung B et al (2021) Fabrication of eco-friendly graphene nanoplatelet electrode for electropolishing and its properties. Appl Sci-basel 11(7):3224. https://doi.org/10.3390/app11073224 38. Kumar R (2019) MEMS based cantilever biosensors for cancer detection using potential bio-markers present in VOCs: a survey. Microsyst Technol 25(9):3253–3267 39. Pong-Ryol J, Tae-Sok J, Nam-Chol K et al (2016) Laser micropolishing for metallic surface using UV nano-second pulse laser and CW laser. Int J Adv Manuf Tech 85(9):2367–2375 40. Yang B, Ai Y (2022) Facile fabrication of CuO nanosheets and in situ transmission electron microscopy/X-ray diffraction heating characterization of microstructure evolution. Phys Status Solidi A 219(6):2100617. https://doi.org/10.1002/pssa.202100617 41. Shen H, Liao C, Zhou J et al (2021) Two-step laser based surface treatments of laser metal deposition manufactured Ti6Al4V components. J Manuf Process 64:239–252 42. Du L, Guo B, Dong Y et al (2022) A wearable omnidirectional inertial switch of security detection for the elderly. Microsyst Technol 28:2011–2021 43. Zhao Y, Qian S, Zhang Y et al (2021) Experimental study on uniformity of copper layer with microstructure arrays by electroforming. Int J Adv Manuf Tech 114(7):2019–2030 44. Zaki S, Zhang N, Gilchrist MD (2022) Potentiodynamic polarization behaviour of Ni for shaping and electropolishing of micromould tools. In: Proceedings of the 38th international manufacturing conference (IMC38), University College Dublin, Dublin 45. Paul R, Hackert-Oschätzchen M, Danilov I et al (2019) 3D multiphysics simulation of jet electrochemical machining of intersecting line removals. 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